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The Role of Hydrophobic Interactions on Alcohol Binding in the Active Center of Penicillin Acylases

G. G. Chilov, D. T. Guranda, and V. K. Svedas*

Belozersky Institute of Physicochemical Biology, Lomonosov Moscow State University, Moscow, 119899 Russia; fax: (095) 939-3181; E-mail: vytas@enzyme.genebee.msu.su

* To whom correspondence should be addressed.

Received November 12, 1999; Revision received December 3, 1999
Inhibition of penicillin acylases from Escherichia coli and Alcaligenes faecalis by aliphatic and aromatic alcohols was studied. It was shown that the inhibition of both enzymes has competitive nature and they bind the alcohols at the acyl group binding site of the enzyme active center. The free energy of alcohol sorption was shown to be linearly dependent on the hydrophobicity of the inhibitor with slopes of 1.6 and 1.7, demonstrating extremely effective hydrophobic interactions. To rationalize the observed distinctions in the inhibiting properties of aromatic and aliphatic alcohols beginning with butanol, it was suggested that the loss of entropy occurring on the interaction of the ligand with the tightly restricted hydrophobic pocket of the active center makes an essential contribution to the overall energetics of complex formation.
KEY WORDS: penicillin acylase, hydrophobicity, inhibition, extraction model